TY - GEN
T1 - On the Importance of Dynamic FOV Receivers for Dense Indoor Optical Wireless Networks
AU - Abdalla, I.
AU - Rahaim, M. B.
AU - Little, T. D.C.
N1 - Publisher Copyright:
© 2020 IEEE.
PY - 2020/6
Y1 - 2020/6
N2 - The increased density of fixed and mobile wireless devices in indoor settings introduces novel challenges related to the deployment of multi-user access points (APs). Network 'densification' includes the adoption of many replicated APs in order to meet aggregate demands divided up across the system. However, the close proximity of APs can create interference. Directional optical channels have been proposed to improve signal isolation between adjacent APs.In this paper we explore the use of controlled dynamic field of view (D-FOV) as a way to isolate resources. Specifically, we study (a) system resource reuse, (b) receiver scope, and (c) interference mitigation. Analysis and simulation show performance gains in overall system performance, and user SNR/SINR. We also show that D-FOV enables improved resource reuse, making full use of spatial diversity while mitigating interference effects on user devices. We validate results using data collected in a network and lighting testbed implementation. Results of the experimentation show good correspondence to the analysis and reveal the associated trade-offs that occur when moving between the span of narrow to wide FOVs.
AB - The increased density of fixed and mobile wireless devices in indoor settings introduces novel challenges related to the deployment of multi-user access points (APs). Network 'densification' includes the adoption of many replicated APs in order to meet aggregate demands divided up across the system. However, the close proximity of APs can create interference. Directional optical channels have been proposed to improve signal isolation between adjacent APs.In this paper we explore the use of controlled dynamic field of view (D-FOV) as a way to isolate resources. Specifically, we study (a) system resource reuse, (b) receiver scope, and (c) interference mitigation. Analysis and simulation show performance gains in overall system performance, and user SNR/SINR. We also show that D-FOV enables improved resource reuse, making full use of spatial diversity while mitigating interference effects on user devices. We validate results using data collected in a network and lighting testbed implementation. Results of the experimentation show good correspondence to the analysis and reveal the associated trade-offs that occur when moving between the span of narrow to wide FOVs.
KW - coverage
KW - dense networks
KW - field of view (FOV).
KW - interference
KW - LiFi
KW - mobile devices
KW - optical wireless communications (OWC)
KW - receiver scope
KW - resource reuse
KW - Visible light communications (VLC)
UR - https://www.scopus.com/pages/publications/85089411772
UR - https://www.scopus.com/pages/publications/85089411772#tab=citedBy
U2 - 10.1109/ICC40277.2020.9149050
DO - 10.1109/ICC40277.2020.9149050
M3 - Conference contribution
AN - SCOPUS:85089411772
T3 - IEEE International Conference on Communications
BT - 2020 IEEE International Conference on Communications, ICC 2020 - Proceedings
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2020 IEEE International Conference on Communications, ICC 2020
Y2 - 7 June 2020 through 11 June 2020
ER -